材料科学
拉曼光谱
X射线光电子能谱
阴极
氧气
氧化物
相变
化学工程
离子
纳米技术
化学
物理化学
热力学
工程类
物理
有机化学
冶金
光学
作者
Xiaoqian Xu,Sijiang Hu,Qichang Pan,Youguo Huang,Jingchao Zhang,Yanan Chen,Hongqiang Wang,Fenghua Zheng,Qingyu Li
出处
期刊:Small
[Wiley]
日期:2023-11-08
卷期号:20 (12)
被引量:11
标识
DOI:10.1002/smll.202307377
摘要
Abstract P2‐Na 2/3 Ni 1/3 Mn 2/3 O 2 cathode materials have garnered significant attention due to their high cationic and anionic redox capacity under high voltage. However, the challenge of structural instability caused by lattice oxygen evolution and P2‐O2 phase transition during deep charging persists. A breakthrough is achieved through a simple one‐step synthesis of Cr, Mg co‐doped P2‐NaNMCM, resulting in a bi‐functional improvement effect. P2‐NaNMCM‐0.01 exhibits an impressive capacity retention rate of 82% after 100 cycles at 1 C. In situ X‐ray diffraction analysis shows that the “pillar effect” of Mg mitigates the weakening of the electrostatic shielding and effectively suppresses the phase transition of P2‐O2 during the charging and discharging process. This successfully averts serious volume expansion linked to the phase transition, as well as enhances the Na + migration. Simultaneously, in situ Raman spectroscopy and ex situ X‐ray photoelectron spectroscopy tests demonstrate that the strong oxygen affinity of Cr forms a robust TM─O bond, effectively restraining lattice oxygen evolution during deep charging. This study pioneers a novel approach to designing and optimizing layered oxide cathode materials for sodium‐ion batteries, promising high operating voltage and energy density.
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